Phospholipase A2 group IVD mediates the transacylation of glycerophospholipids and acylglycerols.

IF 5 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Johannes Breithofer, Dominik Bulfon, Nermeen Fawzy, Martin Tischitz, Clara Zitta, Lennart Hartig, Gernot F Grabner, Anita Pirchheim, Hubert Hackl, Ulrike Taschler, Achim Lass, Carmen Tam-Amersdorfer, Herbert Strobl, Dagmar Kratky, Robert Zimmermann
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引用次数: 0

Abstract

In mammalian cells, glycerolipids are mainly synthesized using acyl-CoA-dependent mechanisms. The acyl-CoA-independent transfer of fatty acids between lipids, designated as transacylation reaction, represents an additional mechanism for lipid remodeling and synthesis pathways. Here, we demonstrate that human and mouse phospholipase A2 group IVD (PLA2G4D) catalyzes transacylase reactions using both phospholipids and acylglycerols as substrates. In the presence of monoglycerol and diacylglycerol (MAG and DAG), purified PLA2G4D generates DAG and triacylglycerol, respectively. The enzyme also transfers fatty acids between phospholipids and from phospholipids to acylglycerols. Overexpression of PLA2G4D in COS7 cells enhances the incorporation of polyunsaturated fatty acids into triacylglycerol stores and induces the accumulation of lysophospholipids. In the presence of exogenously added MAG, the enzyme strongly increases cellular DAG formation, while MAG levels are decreased. PLA2G4D is not or poorly detectable in commonly used cell lines. It is expressed in keratinocytes, where it is strongly upregulated by proinflammatory cytokines. Pla2g4d-deficient mouse keratinocytes exhibit complex lipidomic changes in response to cytokine treatment, indicating that PLA2G4D is involved in the remodeling of the lipidome under inflammatory conditions. Transcriptomic analysis revealed that PLA2G4D modulates fundamental biological processes including cell proliferation, differentiation, and signaling. Together, our observations demonstrate that PLA2G4D has broad substrate specificity for fatty acid donor and acceptor lipids, allowing the acyl-CoA-independent synthesis of both phospholipids and acylglycerols. Loss-of-function studies indicate that PLA2G4D affects metabolic and signaling pathways in keratinocytes, which is associated with complex lipidomic and transcriptomic alterations.

磷脂酶 A2 IVD 组介导甘油磷脂和酰基甘油的反式酰化。
在哺乳动物细胞中,甘油酯主要通过依赖酰基-CoA 的机制合成。不依赖于酰基-CoA 的脂肪酸在脂质之间的转移被称为反式酰化反应,它代表了脂质重塑和合成途径的另一种机制。在这里,我们证明了人和小鼠磷脂酶 A2 组 IVD(PLA2G4D)能以磷脂和酰基甘油为底物催化反式酰化酶反应。在存在单酰甘油和二酰甘油(MAG 和 DAG)的情况下,纯化的 PLA2G4D 可分别生成 DAG 和三酰甘油(TAG)。该酶还能在磷脂之间以及从磷脂向酰基甘油转移脂肪酸。在 COS7 细胞中过表达 PLA2G4D 会增强多不饱和脂肪酸在 TAG 储存中的结合,并诱导溶血磷脂的积累。在外源添加 MAG 的情况下,该酶会强烈增加细胞 DAG 的形成,而 MAG 的水平则会下降。在常用的细胞系中检测不到或很难检测到 PLA2G4D。它在角质形成细胞中表达,并受促炎细胞因子的强烈上调。Pla2g4d 缺失的小鼠角朊细胞在细胞因子处理后表现出复杂的脂质组变化,表明 PLA2G4D 参与了炎症条件下脂质组的重塑。转录组分析表明,PLA2G4D 可调节基本的生物过程,包括细胞增殖、分化和信号传导。我们的观察结果表明,PLA2G4D 对脂肪酸供体和受体脂质具有广泛的底物特异性,可以不依赖酰基-CoA 合成磷脂和酰基甘油。功能缺失研究表明,PLA2G4D 会影响角朊细胞的代谢和信号通路,这与复杂的脂质组和转录组改变有关。
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来源期刊
Journal of Lipid Research
Journal of Lipid Research 生物-生化与分子生物学
CiteScore
11.10
自引率
4.60%
发文量
146
审稿时长
41 days
期刊介绍: The Journal of Lipid Research (JLR) publishes original articles and reviews in the broadly defined area of biological lipids. We encourage the submission of manuscripts relating to lipids, including those addressing problems in biochemistry, molecular biology, structural biology, cell biology, genetics, molecular medicine, clinical medicine and metabolism. Major criteria for acceptance of articles are new insights into mechanisms of lipid function and metabolism and/or genes regulating lipid metabolism along with sound primary experimental data. Interpretation of the data is the authors’ responsibility, and speculation should be labeled as such. Manuscripts that provide new ways of purifying, identifying and quantifying lipids are invited for the Methods section of the Journal. JLR encourages contributions from investigators in all countries, but articles must be submitted in clear and concise English.
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